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Seven-Element Ground Skirt Monopole ESPAR Antenna Design From a Genetic Algorithm and the Finite Element Method

机译:基于遗传算法和有限元方法的七元素地裙单极ESPAR天线设计

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摘要

The design of an optimized Electronically Steerable Passive Array Radiator (ESPAR) antenna is presented. A genetic algorithm using a finite element based cost function optimized the antenna's structure and loading conditions for maximal main lobe gain in a single azimuth direction. Simulated gain results of 7.3 dBi at 2.4 GHz were attained along the antenna's elemental axis. The optimized antenna was fabricated and tested with the corresponding experimental gain better than 8 dBi. The 0.7 dB error between simulated and measured gain was constant for numerous structures and therefore did not affect the optimization. The optimized antenna reduced average main lobe elevation by 15.3° to just 9.7° above the horizontal.
机译:提出了一种优化的电子可控无源阵列辐射器(ESPAR)天线的设计。使用基于有限元成本函数的遗传算法优化了天线的结构和负载条件,以在单个方位角方向上获得最大的主瓣增益。沿着天线的基本轴在2.4 GHz处获得了7.3 dBi的模拟增益结果。制作并测试了优化的天线,并以高于8 dBi的相应实验增益进行了测试。对于许多结构,仿真增益和测量增益之间的0.7 dB误差是恒定的,因此不会影响优化。经过优化的天线将平均主瓣高度降低了15.3°,仅比水平面高9.7°。

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